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Projects source: E-CRIS

UTILIZATION OF BY-PRODUCTS AND RECYCLED WASTE MATERIALS IN CONCRETE COMPOSITES IN THE SCOPE OF SUSTAINABLE CONSTRUCTION DEVELOPMENT IN SERBIA: INVESTIGATION AND ENVIRONMENTAL ASSESSMENT OF POSSIBLE APPLICATIONS

Research activity

Code Science Field
T002  Technological sciences  Construction technology 
T150  Technological sciences  Material technology 
T152  Technological sciences  Composite materials 
T230  Technological sciences  Building construction 
T270  Technological sciences  Environmental technology, pollution control 
Keywords
sustainable construction, waste and recycled materials, concrete composites, properties, utilization
Organisations (5) , Researchers (2)
0038  University of Novi Sad, Faculty of Technical Sciences
no. Code Name and surname Research area Role Period No. of publicationsNo. of publications
1.  05645  PhD Vlastimir Radonjanin  Material technology  Head  2011 - 2019  159 
0010  University of Belgrade, Faculty of Civil Engineering
0042  University of Novi Sad, Faculty of Civil Engineering
0110  Institute for testing materials
0116  University of Nis, Faculty of Civil Engineering and Architecture
no. Code Name and surname Research area Role Period No. of publicationsNo. of publications
1.  12236  PhD Iva M. Despotović  Civil engineering, hydraulic engineering, offshore technology, soil mechanics  Researcher  2011 - 2019 
Abstract
The subject of this project are normal, self compacting and fiber reinforced concrete composites based on the industrial, construction and other waste materials. Through theoretical and experimental research it will be determined the possibility of replacing the natural aggregate in concrete using recycled domestic waste and replacement of cement with industrial byproducts and waste materials, as well as other mineral materials. As a substitute for natural aggregate, it is planned usage of recycled concrete, brick, glass and rubber, and as substitution for part of cement will be used fly ash and milled limestone. To improve the mechanical properties of concrete, it will be added silica fume and metakaolin, chemical admixtures and fiber reinforcement. In particular, will be explored the possibility of applying reclaimed asphalt material in hot mix asphalt process. Optimization of the composition of concrete would be done by using genetic algorithms and artificial neural networks. In order to obtain a more complete picture of the investigated composites, will be enforced: micro-structural analysis, macrostructure modeling, rheological-dynamical analogy and testing beams under long-term loading. It will be done evaluation of influence of investigated concretes on the environment using "LCA" methodology. As a result of the project, except for published papers, will be formed groups of concrete with the same capabilities of application and defined composition.
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